方解石
相变
结晶学
Crystal(编程语言)
订单(交换)
X射线晶体学
矿物学
材料科学
地质学
化学
凝聚态物理
物理
衍射
光学
计算机科学
经济
程序设计语言
财务
作者
Yancheng Hu,Yu Ye,Dan Liu,Zhengrong Wang,Xi Zhu,Sha Wang,Yunfan Miao,Zhen Wu
标识
DOI:10.1021/acs.jpcc.4c00827
摘要
Calcium carbonate (CaCO3) is an important carbon host on Earth, playing a key role in the global carbon cycle. Barium-bearing carbonate has unique properties that demand a systematic study. Nine BaxCa1–xCO3 (0.10 ≤ x ≤ 0.89) solid solutions were synthesized at 2.5 GPa (gigapascal) and 1200 °C. Single-crystal X-ray diffraction analyses indicate that the phases with x ≤ 0.19 and x ≥ 0.27 form in the symmetry of R3̅c and R3̅m, respectively. The a and c axes and average Ca(Ba)–O bond length increase gradually with the increasing Ba2+ concentration. The replacement of Ca2+ by Ba2+ helps stabilize the aplanarity and disordered orientations of CO3 groups down to ambient condition. X-ray photoelectron spectroscopy was measured on these synthetic samples, and their structural environments of atoms are similar to those in pure calcite. The Raman- and IR-active modes generally show a red-shift with the incorporation of Ba2+, without any significant difference between the ordered and disordered structures. The R3̅m phases transform to the aragonite-type structure around 1000 K. This study provides useful structural information for both bioinspired materials and carbonate minerals, with implications to the phase transitions in carbonates at high P–T conditions in Earth's interior.
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